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초소형 전기차량 구동용 매입형 영구자석 전동기 특성 해석 및 최적 설계

이재길 2020년
논문상세정보
' 초소형 전기차량 구동용 매입형 영구자석 전동기 특성 해석 및 최적 설계' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • 응용 물리
  • 대리모델(surrogate model)
  • 매입형 영구자석 동기전동기(interior permanent magnet synchronous motor)
  • 멀티 모달 최적화(multimodal optimization)
  • 유한요소법(finite element method)
  • 자기등가회로(magnetic equivalent circuit)
  • 초소형 전기자동차(micro mobility)
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
4,656 0

0.0%

' 초소형 전기차량 구동용 매입형 영구자석 전동기 특성 해석 및 최적 설계' 의 참고문헌

  • 효과를 고려하는 영구자석 전동기의 특성 해석 및 최적 설계
    오버행 우동균 서울대학교 [2014]
  • 차량 구동용 다층 매입형 영구자석 전동기의 특성 해석 및 설계
    곽상엽 서울대학교 [2007]
  • 전세계 전기자동차 보급 동향,
    대한석유협회 미래전략팀 [2018]
  • 전기자동차 주행거리 확장용 매입형 영구자석 발전기 최적 설계
    임동국 서울대학교 [2017]
  • 전기자동차 인 휠 시스템용 축 방향 자속 영구 자석 전동기 최적 설계
    박현정 서울대학교 [2018]
  • 전기기기 제어론
    설승기 홍릉과학출판사 [2007]
  • 영구자석 전동기의 열 특성 해석 및 최적 설 계
    매입형 서장호 차량용 서울대학교 [2010]
  • 동적 부하 특성을 고려한 로봇용 표면 부착형 영구자석 전 동기 설계
    서정무 서울대학교 [2016]
  • “환경부, 우체국에 친환경 배달장비 보급 추진,”
    환경부 [2018]
  • “친환경 자동차 기술개발 동향,”
    김호기 과학기술정책, pp. 22-33, 3 [2010]
  • “초소형자동차 안전기준 및 인증기술 개발 최종보고 서,”
    국토교통부 [2017]
  • “초소형 전기차 기술동향 및 개발사례,”
    박찬범 전기의세계, pp. 21-26, 7 [2017]
  • “초소형 모빌리티(Micro car) 기술 동향”
    최윤혁 주간기술동향, pp. 15-28, 3 4 [2019]
  • “전기자동차 산업테마보고서,”
    정조순 한국기업데이터 [2019]
  • “전기자동차 보급 및 충전인프라 구축 현황,”
    환경부 [2019]
  • “일본 초소형모빌리티의 동향과 보급과제,”
    김재열 월간교통, pp. 65-71, 2 [2018]
  • “이데일리,”
    이성기 2 5 [온라인]. Available: https://www.edaily.co.kr/news/read?newsId=03178326619204984&mediaC odeNo=2 [2015]
  • “유럽의 전기자동차 정책동향(글로벌기술협력기반육성사업 심층분석 보고서),”
    GT Korea [2018]
  • “에너지 총조사 전기자동차 조사 결과보고서,”
    산업통상자원부, 2017 [2017]
  • “부산일보,”
    최강호 9 7 [온라인]. Available: http://mobile.busan.com/view/busan/view.php?code=20180709000277 [2018]
  • ¡°An accurate subdomain model for magnetic fieldComputation in slotted surface-mounted permanent-magnet machines
    vol . 46 , no . 4 , pp . 1100-1115 [2010]
  • [78] J. Galvez and O. Avalos, "Flower pollination algorithm for multimodal optimization," Int. J . Comput. Intel. Sys., vol. 10, no. 1, pp. 624-646, 2017.
  • [77] E. Cuevas and A. R. Orta, "A cuckoo search algorithm for multimodal optimization," The Scientific World Journal, vol. 2014, p. Art. ID 497514, 2014.
  • [74] V. B. Honsinger, "Sizing equations for electrical machinery," IEEE Trans. Energy Convers., vols. EC-2, no. 1, pp. 116-121, 1987.
  • [66] M. Liefvendahl, and R. Stocki, "A study on algorithms for optimization of Latin hypercubes," J . Statist. Plann. Inference, vol. 136, no. 9, pp. 3231-3247, 2006.
  • [57] C. Stoean, M. Preuss, R. Stoean and D. Dumitrescu, "Multimodal optimization by means of a topological species conservation algorithm," IEEE Trans. Evol. Compu., vol. 14, no. 6, pp. 842-864, 2010.
  • [51] H. M. Hasanien, "Particle swarm design optimization of transverse flux linear motor for weight reduction and improvement of thrust force," IEEE Trans. Ind. Electron., vol. 58, no. 9, pp. 4048-4056, 2010.
  • [46] M. Amrhein and P. T. Krein, "Induction machine modeling approach based on 3-D magnetic equivalent circuit framework," IEEE Trans. Magn., vol. 25, no. 2, pp. 339-347, 2010.
  • [3] IEA, “Global EV Outlook 2019,” 2019.
  • [37] M. Moallen and G. E. Dawson, "An improved magnetic equivalent circuit method for predicting the characteristics of highly saturated electromagnetic devices," IEEE Trans. Magn., vol. 34, no. 5, pp. 3632-3635, 1998.
  • [30] R. Qu and T. A. Lipo, "Analysis and modeling of air-gap and zigzag leakage fluxes in a surface-mounted permanent-magnet machine," IEEE Trans. Ind. Appl., vol. 40, no. 1, pp. 121-127, 2004.
  • [25] D. K. Lim, K. P. Yi, D. K. Woo, H. K. Yeo, J. S. Ro, C. G. Lee and H. K. Jung, "Analysis and design of a multi-layered and multi-segmented interior permanent magnet motor by using an analytic method," IEEE Trans. Magn., vol. 50, no. 6, p. Art. ID 8201308, 2014.
  • [23] D. C. Hanselman, Brushless permanent-magnet motor design, McGraw-Hill, 1994.
  • [22] J. R. Hendershot and T. J. E. Miller, Design of brushless permanent magnet motors, Oxford, U.K.: Magna Physics and Clarendon Press, 1994.
  • Vehicle running characteristic simulator using induction motor
    vol . 60 , no . 10 , pp . 1903-1914 [2011]
  • Torque ripple minimization for a permanent magnet synchronous motor using a modified quasi-Z-source inverter
    vol . 34 , no . 4 , pp . 3819-3830 [2019]
  • The Koreal Herald , 27 11 2018 . . Available : http : //www . oreaherald.com/view.php ? ud=20181127000674
  • Static characteristics of linear BLDC motor using equivalent magnetic circuit and finite element method
    vol . 40 , no . 2 , pp . 742-745 [2004]
  • Simple nonlinear magnetic analysis for permanent-magnet motors
    vol . 41 , no . 5 , pp . 1205-1014 [2005]
  • Shape optimization of electromagnetic devices using immune algorithm
    vol . 33 , no . 2 , pp . 1876-1879 , [1997]
  • Pulsating torque minimization techniques for permanent magnet AC motor drivesA review
    vol . 43 , no . 2 , pp . 321-330 [1996]
  • Particle swarm optimisation in efficiency improvement of vector controlled surface mounted permanent magnet synchronous motor drive
    vol . 8 , no . 5 , pp . 760-769 [2015]
  • Optimization for reduction of torque ripple in interior permanent magnet motor by using the taguchi method
    vol . 41 , no . 5 , pp . 1796-1799 [2005]
  • Optimal stator design of interior permanent magnet motor to reduce torque ripple using the level set method
    vol . 46 , no . 6 , pp . 2108-2111 [2010]
  • Nonlinear varying-network magnetic circuit analysis for doubly salient permanent magnet motors
    vol . 36 , no . 1 , pp . 339-348 [2000]
  • Nonlinear analytical model for a multi-V-shape IPM with concentrated winding
    vol . 54 , no . 3 , pp . 2165-2154 [2018]
  • Multimodal function optimization based on particle swarm optimization
    vol 42 , no . 4 , pp . 1095-1098 [2006]
  • Mitigation of torque ripple in interior permanent magnet motors by optimal shape deisgn
    vol . 42 , no . 11 , pp . 3706-3711 [2006]
  • Metamodels for computer-based engineering design : survey and recommendations
    vol . 17 , no . 2 , pp . 129-150 [2001]
  • Magnetic equivalent circuit modeling of brushless doubly-fed induction generator
    vol . 8 , no . 3 , pp . 334-346 [2014]
  • Magnetic equivalent circuit model considering overhang structrue of a surface-mounted permanent magnet motor
    vol . 51 , no . 3 , p. Art . Id . 8201004 [2015]
  • M. Muhlmann and W. Renhart , Evolution strategy and hierarchical clustering
    vol . 38 , no . 2 , pp . 1041-1044 , [2002]
  • Instantaneous magnetic field distribution in brushless permanent magnet dc motors
    vol . 29 , no . 1 , pp . 124-135 , [1993]
  • Hybrid space vector modulation strategy for torque ripple minimization in three-phase four-switch inverter-fed PMSM drives
    vol . 64 , no . 3 , pp . 2122-2134 [2017]
  • G. P. E. Brownbridge , and M. Kraft , Evaluating smart sampling for constructing multidimensional surrogate models
    vol . 108 , no . 4 , pp . 276-288 [2018]
  • Electromagnetic performance analysis of interior PM machines for electric vehicle applications
    vol . 33 , no . 1 , pp . 199-208 [2018]
  • Electric Vehicle Technology Explained
    [2003]
  • Efficient space-filling and non-collapsing sequential design strategies for simulation-based modeling
    vol . 214 , no . 3 , pp . 683-696 [2011]
  • Design optimization of electrical machines using genetic algorithms ,
    vol . 31 , no . 3 , pp . 2008-2011 [1995]
  • Design optimisation of electric motors by genetic algorithm
    vol . 145 , no . 5 , pp . 475-483 [1998]
  • Design of computer experiments : A review
    vol . 106 , no . 2 , pp . 71-95 [2017]
  • DC, AC, BLDC 모터제어
    김상훈 복두 출판사 [2011]
  • Core loss calculation of permenanent magnet machines using analytical method
    vol . 28 , no . 3 , p. Art . ID . 5205005 [2018]
  • Comparison of lumped parameter and finite element magnetic modeling in a brushless DC motor
    vol . 33 , no . 5 , pp . 4092-4094 [1997]
  • Cogging torque minimization of a dual-type axial-flux permanent magnet motor using a novel optimization algorithm
    vol . 49 , no . 9 , pp . 5106-5111 , [2013]
  • C. A. R. Marretto , M. C. Cost and J.-L. Coulomb , Kriging : A usuful tool for electromagnetic device optimization
    vol . 40 , no . 2 , pp . 1196-1199 , [2004]
  • Analytical models for interior-type permanent magnet synchronous motors
    Vols . MAG-21 , no . 5 , pp . 1741-1743 , 195 .
  • Analytical modeling of open-circuit air-gap field distributions in multisegment and multilayer interior permanent-magnet machines
    vol . 45 , no . 8 , pp . 3121-3130 , [2009]
  • Analytical method for predicting the air-gap flux of interior-type permanent-magnet machines
    vol . 40 , no . 1 , pp . 50-58 [2004]
  • Analysis of torque ripple and cogging torque reduction in electric vehicle traction platform applying rotor notched design
    vol . 11 , no . 11 , pp . 3053 , [2018]
  • Analysis of flux leakage in a brushless permanent-magnet motor with embedded magnets
    vol . 35 , no . 1 , pp . 543-547 , [1999]
  • Analysis and design of interior permanent magnet synchronous motor using a sequential-stage magnetic equivalent circuit
    vol . 55 , no . 10 , Art . ID 7501004 [2019]
  • An improved magnetic equivalent circuit model for iron-core linear permanent-magnet synchronous motors
    vol . 46 , no . 1 , pp . 112-120 [2010]
  • An improved artificial bee colony algorithm for optimal design of electromagnetic devices
    vol . 49 , no . 8 , pp . 4811-4816 [2013]
  • An algorithm for fast optimal Latin hypercube design of experiments
    vol . 82 , no . 2 , pp . 135-156 [2009]
  • Aanlysis of elctromagnetic performance of flux-switching permanent-magnet machines by nonlinear adaptive lumped parameter magneitc circuit model
    vol . 41 , no . 11 , pp . 4277-4287 , [2005]
  • A saturating lumped-parameter model for an interior PM synchronous machine
    vol . 38 , no . 3 , pp . 645-650 [2002]
  • A robust error-pursuing sequential sampling approach for global metamodeling based on voronoi diagram and cross validation
    vol . 316 , no . 7 , p. Art . ID 071009 [2014]
  • A parallel version of the self-adaptive low-high evaluation evolutionary-algorithm for electromagnetic device optimization
    vol . 50 , no . 2 , p. Art . ID 7015604 [2014]
  • A novel multimodal optimization algorithm for the design of electromagnetic machines
    vol . 52 , no . 3 , p. Art . Id . 8201304 [2016]
  • A novel multimodal optimization algorithm applied to electromagnetic optimization
    vol . 47 , no . 6 , pp . 1667-1673 [2011]
  • A novel algorithm of maximin Latin hypercube design using successive local enumeration
    vol . 44 , no . 5 , pp . 551-564 [2012]
  • A novel algorithm for multimodal function optimization based on evolutionary strategy
    vol . 40 , no . 2 , pp . 1224-1227 [2004]
  • A niche GSA method with nearest neighbor scheme for multimodal optimization ,
    vol . 35 , pp . 78-92 , [2017]
  • A new multimodal optimization algorithm for the design of in-wheel motors
    vol . 51 , no . 3 , p. Art . ID 8201704 [2015]
  • A generalized magnetic circuit modeling approach for design of surface permanent-magnet machines
    vol . 59 , no . 2 , pp . 779-792 [2012]
  • A closed-loop fuzzy-logic-based current controller for PMSM torque ripple minimization using the magnitude of speed harmonic as the feedback control signal
    vol . 64 , no . 4 , pp . 2642-2653 [2017]
  • 3-D lumped parameter magnetic circuit analysis of single-phase flux-switching permanent magnet motor
    vol . 44 , no . 6 , pp . 1701-1710 [2008]